Porous, Oxygen Vacancy Enhanced CeO2-x Microspheres with Efficient Enzyme-Mimetic and Photothermal Properties

被引:54
作者
Akdogan, Cagil Zeynep Sungu [1 ]
Gokcal, Burcu [2 ]
Polat, Mustafa [3 ]
Hamaloglu, Kadriye Ozlem [2 ]
Kip, Cigdem [2 ]
Tuncel, Ali [1 ,2 ]
机构
[1] Hacettepe Univ, Bioengn Div, TR-06800 Ankara, Turkey
[2] Hacettepe Univ, Chem Engn Dept, TR-06800 Ankara, Turkey
[3] Hacettepe Univ, Dept Phys Engn, TR-06800 Ankara, Turkey
关键词
ceria; gray ceria; black titania; photothermal therapy; nanozyme; pollutant detection; peroxidase-like activity; colorimetric determination; PEROXIDASE-LIKE ACTIVITY; COLORIMETRIC DETECTION; HYDROGEN-PEROXIDE; NANOZYME; GLUCOSE; OXIDE; NANOPARTICLES; PERFORMANCE; CATALYSIS; DEFECTS;
D O I
10.1021/acssuschemeng.2c01981
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Porous, defective, gray cerium oxide (g-CeO2-x) microspheres 4.8 mu m in size were synthesized as a multifunctional nanozyme with catalase-, peroxidase-, and oxidase-like activities by the reduction of monodisperse-porous cerium oxide (CeO2) microspheres. Higher Ce(III) atomic fraction, more oxygen vacancy, and lower oxygen content on the surface of g-CeO2-x microspheres were shown by Raman and X-ray photoelectron spectroscopy. Band gap energies of plain CeO2 and g-CeO2-x microspheres were determined as 3.0 and 2.4 eV, respectively. Reactive oxygen species (ROS) related to the enzyme-mimetic activity of g-CeO2-x microspheres were determined as singlet oxygen (O-1(2)center dot) and superoxide anion (center dot O-2(-)) by ESR spectroscopy. Michaelis-Menten plots sketched for catalase-, peroxidase-, and oxidase-like activities provided superior maximum substrate consumption rates for g-CeO2-x microspheres. Oxidase- and peroxidase-like activities were used for developing colorimetric and fluorometric protocols for the detection of nitrite as a common pollutant, respectively. g-CeO2-x microspheres also exhibited a photothermal response explained by enhanced light adsorption originated from more oxygen vacancies. A temperature elevation up to 19 degrees C was obtained under near infrared laser irradiation at 808 nm. Photothermal response accompanying with multifunctional enzyme-mimetic activities makes the porous nanozyme a promising synergistic therapy agent capable of overcoming hypoxia and generating additional ROS in a tumor microenvironment.
引用
收藏
页码:9492 / 9505
页数:14
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